Ongey Elvis Legala, Pflugmacher Stephan, Neubauer Peter
Department of Biotechnology, Technische Universität Berlin, Ackerstraße 76, ACK24, D-13355 Berlin, Germany.
Aquatic Ecotoxicology in an Urban Environment, Ecosystems and Environment Research Program, Faculty of Biological and Environmental Sciences, University of Helsinki, Niemenkatu 73, FI-15140 Lahti 2, 00100 Helsinki, Finland.
Pharmaceuticals (Basel). 2018 Jul 10;11(3):68. doi: 10.3390/ph11030068.
This review article provides an overview of recent developments in antimicrobial peptides (AMPs), summarizing structural diversity, potential new applications, activity targets and microbial killing responses in general. The use of artificial and natural AMPs as templates for rational design of peptidomimetics are also discussed and some strategies are put forward to curtail cytotoxic effects against eukaryotic cells. Considering the heat-resistant nature, chemical and proteolytic stability of AMPs, we attempt to summarize their molecular targets, examine how these macromolecules may contribute to potential environmental risks vis-à-vis the activities of the peptides. We further point out the evolutional characteristics of the macromolecules and indicate how they can be useful in designing target-specific peptides. Methods are suggested that may help to assess toxic mechanisms of AMPs and possible solutions are discussed to promote the development and application of AMPs in medicine. Even if there is wide exposure to the environment like in the hospital settings, AMPs may instead contribute to prevent healthcare-associated infections so long as ecotoxicological aspects are considered.
这篇综述文章概述了抗菌肽(AMPs)的最新进展,总结了其结构多样性、潜在的新应用、活性靶点以及一般的微生物杀伤反应。还讨论了使用人工和天然抗菌肽作为拟肽合理设计的模板,并提出了一些策略来减少对真核细胞的细胞毒性作用。考虑到抗菌肽的耐热性、化学和蛋白水解稳定性,我们试图总结它们的分子靶点,研究这些大分子相对于肽的活性可能对潜在环境风险有何贡献。我们进一步指出这些大分子的进化特征,并说明它们如何有助于设计靶向特异性肽。文中提出了一些可能有助于评估抗菌肽毒性机制的方法,并讨论了促进抗菌肽在医学中开发和应用的可能解决方案。即使在医院环境等广泛暴露于环境的情况下,只要考虑到生态毒理学方面,抗菌肽反而可能有助于预防医疗相关感染。